Evidence supporting the use of: Fiber blend (proprietary)
For the body system: Small Intestines

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Synopsis

Source of validity: Scientific
Rating (out of 5): 4

Fiber blends, often consisting of a mixture of soluble and insoluble fibers from sources such as psyllium husk, inulin, oat bran, and others, are well-supported by modern scientific evidence for their role in supporting small intestine and overall digestive health. Dietary fiber resists digestion in the upper gastrointestinal tract and reaches the small intestine relatively intact. Soluble fibers can form a gel-like substance, slowing transit time and aiding in the absorption of nutrients, while insoluble fibers add bulk to stool and promote regular bowel movements.

Clinical studies indicate that fiber can modulate the gut microbiota, stimulate the production of short-chain fatty acids (SCFAs) like butyrate via bacterial fermentation, and support the integrity of the intestinal lining. These effects are associated with improved gut barrier function and reduced risk of inflammatory conditions such as irritable bowel syndrome (IBS). Research published in journals such as Gut and the American Journal of Clinical Nutrition confirm that dietary fiber intake correlates with improved gastrointestinal function, including the small intestine.

While most fiber is fermented in the colon, its passage through the small intestine does impact satiety, nutrient absorption rates, and the local environment, underscoring its supportive role for this body system. Thus, the inclusion of a fiber blend for small intestine support is well-justified by current scientific evidence, though most benefits are systemic throughout the gut.

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aloe vera
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ginger
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ox bile
magnesium
slippery elm bark
zinc
vitamin D
2′-Fucosyllactose (2′-FL)
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amino acids
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ashitaba
asparagus
Asteracea
bacillus clausii
bacillus coagulans
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bacillus subtilis
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Bifidobacteria
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Bifidobacterium animalis
bifidobacterium bifidum
bifidobacterium breve
bifidobacterium infantis
bifidobacterium lactis
bifidobacterium longum
Bile
bile acid
bile salt
Bitter principals
Black Seed
Boerhavia diffusa
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Brassica
broccoli
brussel sprouts
butyrate triglyceride
butyric acid
Cape Aloe
caprylic acid
carrot
cayenne pepper
cellulose
chia seed
chickpea protein
chicory
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Cinnamomum
cinnamon
coating
colostrum
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electrolytes blend (proprietary)
endo-peptidase
enzymes blend (proprietary)
exo-peptidase
fennel
fiber blend (proprietary)
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flavonols
flaxseed
folate
fructooligosaccharides (FOS)
fungal enzymes blend (proprietary)
fungal protease
Galactosidase
green banana
green tea
gurmar
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immunoglobin G
inulin
isomalto-oligosaccharide
kale
l-5-methyltetrahydrofolate glucosamine salt (5-MTHF)
l-alanyl-l-glutamine
l-glutamine
lactase
lactiplantibacillus plantarum
lactobacillus acidophilus
lactobacillus brevis
lactobacillus bulgaricus
lactobacillus casei
lactobacillus fermentum
lactobacillus gasseri
lactobacillus helveticus
lactobacillus paracasei
lactobacillus reuteri
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lactobacillus salivarius
lactococcus lactis
lactoferrin
lemon
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lipase
medium chain triglycerides (MCT)
microbial enzymes (proprietary)
Milk Protein
millet seed
n-acetyl-glucosamine
okra
pancreatin
papaya
parsley
pear
peptidase (DPPIV)
phellodendron amurense
phenolic acids
phospholipids
phytase
polyphenols
potato starch
prebiotic blend (proprietary)
prolyl endopeptidase (PEP)
protease
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pterocarpus marsupium
pumpkin
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saccharomyces boulardii
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Soy Protein
soybean
spinach
starch
streptococcus thermophilus
sucrase
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trace minerals
tributyrin
vitamin A
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vitamin D3
water
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xylooligosaccharides
yarrow
dioscorea
fenugreek
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